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Biofabrication|January 20, 2021
A targeted rheological bioink development guideline and its systematic correlation with printing behaviorAxel Pössl, David Hartzke, Thomas M Schmidts, et al.Biofabrication|January 29, 2021
Scalable fabrication of renal spheroids and nephron-like tubules by bioprinting and controlled self-assembly of epithelial cellsKevin Tröndle, Ludovica Rizzo, Roman Pichler, et al.Biofabrication|January 29, 2021
Vascularized adipocyte organoid model using isolated human microvessel fragmentsHannah A Strobel, Thomas Gerton, James B HoyingBiofabrication|September 28, 2019
In situ tissue engineering of the tendon-to-bone interface by endogenous stem/progenitor cellsSolaiman Tarafder, John A Brito, Sumeet Minhas, et al.Biofabrication|January 18, 2021
Enhancing islet transplantation using a biocompatible collagen-PDMS bioscaffold enriched with dexamethasone-microplatesRosita Primavera, Mehdi Razavi, Bhavesh D Kevadiya, et al.Biofabrication|September 12, 2019
Collagen/bioceramic-based composite bioink to fabricate a porous 3D hASCs-laden structure for bone tissue regenerationWonJin Kim, GeunHyung KimBiofabrication|March 4, 2021
Engineering bioinks for 3D bioprintingGuy Decante, João B Costa, Joana Silva-Correia, et al.Biofabrication|March 4, 2021
Printability and bio-functionality of a shear thinning methacrylated xanthan-gelatin composite bioinkM R Garcia-Cruz, A Postma, J E Frith, et al.Biofabrication|May 13, 2011
Fabrication of 2D protein microstructures and 3D polymer-protein hybrid microstructures by two-photon polymerizationSascha Engelhardt, Eva Hoch, Kirsten Borchers, et al.Biofabrication|March 2, 2011
Adipogenic differentiation of laser-printed 3D tissue grafts consisting of human adipose-derived stem cellsM Gruene, M Pflaum, A Deiwick, et al.Pageof 168